Multiscale characterization of spatial relationships among oxycline depth, macrozooplankton, and forage fish off Peru using geostatistics, principal coordinates of neighbour matrices (PCNMs), and wavelets

Author:

Grados Daniel1,Fablet Ronan2,Ballón Michael3,Bez Nicolas1,Castillo Ramiro3,Lezama-Ochoa Ainhoa4,Bertrand Arnaud1

Affiliation:

1. Institut de Recherche pour le Developpement (IRD), UMR212 EME (IFREMER–IRD–UM2), Av. Jean Monnet, BP 171, 34203 Sète CEDEX, France.

2. TELECOM Bretagne; UMR CNRS 3192 Lab-STICC, Technopôle Brest Iroise CS 83818, 29238 Brest CEDEX, France.

3. Instituto del Mar del Peru (IMARPE), Esquina Gamarra y Gral. Valle s/n, Apartado 22, Callao, Lima, Peru.

4. AZTI-Tecnalia, Marine Research Unit, Herrera Kaia Portualdea z/g, 20110 Pasaia, Basque Country, Spain.

Abstract

Upwelling ecosystems are particularly heterogeneous and present intense mesoscale (tens of kilometres) and submesoscale (hundreds of metres to kilometres) activity that are expected to drive the distribution of the organisms and thus their interactions. Here we addressed the impact of the physical forcing in the northern Humboldt Current system off Peru, which is characterized by the presence of an intense and shallow oxygen minimum zone and used the variability of the depth of the oxycline as a proxy of the physical forcing that impacts the epipelagic communities. We analyzed simultaneous high-resolution acoustic observations of the oxycline depth, the biomass in macrozooplankton, and the biomass in pelagic fish. Three complementary methodologies were considered: (i) geostatistical methods and correlation tests, (ii) principal coordinates of neighbour matrices, and (iii) wavelet analysis. Our results highlight the relevance of a multimethod framework to characterize the multiscale relationships between marine ecosystem components. We also provided evidence that the submesoscale-to-mesoscale variability of the oxycline depth drives the distribution of macrozooplankton, which further structures the distribution of forage fish in a bottom-up cascade.

Publisher

Canadian Science Publishing

Subject

Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference61 articles.

1. Bakun, A. 1996. Patterns in the ocean: ocean processes and marine population dynamic. California Sea Grant College System, National Oceanic and Atmospheric Administration in cooperation with Centro de Investigaciones Biologicas del Noroeste, La Paz, Baja California, Mexico.

2. Ballón, M. 2010. Acoustic study of macrozooplankton off Peru: biomass estimation, spatial patterns, impact of physical forcing and effect on forage fish distribution. Ph.D. thesis, University Montpellier II, Montpellier, France.

3. Is there enough zooplankton to feed forage fish populations off Peru? An acoustic (positive) answer

4. Identifying spatial relationships at multiple scales: principal coordinates of neighbour matrices (PCNM) and geostatistical approaches

5. Schooling behaviour and environmental forcing in relation to anchoveta distribution: An analysis across multiple spatial scales

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